3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines biomaterial scaffolds and cells to generate substitutes for diseased or damaged tissues. These bioprinting methods construct tissue replacements by positioning cells encapsulated in bioinks into specific locations in the resulting constructs. Human induced pluripotent stem cells (hiPSCs) serve as an important tool when engineering neural tissues. These cells can be expanded indefinitely and differentiated into the cell types found in the central nervous systems, including neurons. One common method for differentiating hiPSCs into neural tissue requires the formation of aggregates inside of defined diameter microwells cultured in chemically de...
Neurodegenerative diseases affect millions of individuals in North America and cost the health-care ...
Three-dimensional (3D) printing of biological material, or 3D bioprinting, is a rapidly expanding fi...
There is a fundamental need for clinically relevant, reproducible, and standardized in vitro human n...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
Most neurological diseases and disorders lack true cures, including spinal cord injury (SCI). Accord...
3D bioprinting can produce complex human tissue mimics using stem cells (SCs). Herein, cylindrical c...
Direct-write printing of stem cells within biomaterials presents an opportunity to engineer tissue f...
Nervous system disorders including acute traumatic injuries, neurodegenerative diseases, and neurode...
Nervous system disorders including acute traumatic injuries, neurodegenerative diseases, and neurode...
As the human population is getting older, neurodegenerative diseases are becoming an increasing thre...
The ability to create 3D tissues from induced pluripotent stem cells (iPSCs) is poised to revolution...
Neurodegenerative diseases (NDs) are a broad class of pathologies characterized by the progressive l...
Neurodegenerative diseases (NDs) are a broad class of pathologies characterized by the progressive l...
During the central nervous system (CNS) morphogenesis, chemical gradients of morphogens such as reti...
Neurodegenerative diseases affect millions of individuals in North America and cost the health-care ...
Three-dimensional (3D) printing of biological material, or 3D bioprinting, is a rapidly expanding fi...
There is a fundamental need for clinically relevant, reproducible, and standardized in vitro human n...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
3D bioprinting offers the opportunity to automate the process of tissue engineering, which combines ...
Most neurological diseases and disorders lack true cures, including spinal cord injury (SCI). Accord...
3D bioprinting can produce complex human tissue mimics using stem cells (SCs). Herein, cylindrical c...
Direct-write printing of stem cells within biomaterials presents an opportunity to engineer tissue f...
Nervous system disorders including acute traumatic injuries, neurodegenerative diseases, and neurode...
Nervous system disorders including acute traumatic injuries, neurodegenerative diseases, and neurode...
As the human population is getting older, neurodegenerative diseases are becoming an increasing thre...
The ability to create 3D tissues from induced pluripotent stem cells (iPSCs) is poised to revolution...
Neurodegenerative diseases (NDs) are a broad class of pathologies characterized by the progressive l...
Neurodegenerative diseases (NDs) are a broad class of pathologies characterized by the progressive l...
During the central nervous system (CNS) morphogenesis, chemical gradients of morphogens such as reti...
Neurodegenerative diseases affect millions of individuals in North America and cost the health-care ...
Three-dimensional (3D) printing of biological material, or 3D bioprinting, is a rapidly expanding fi...
There is a fundamental need for clinically relevant, reproducible, and standardized in vitro human n...